faculty-profile

Dr. Rebelli Shashank

info

Assistant Professor

Electronics and Communication Engineering

NIT Warangal

3 Years

VLSI, Analog IC Design

Analog IC Design, On-Chip interconnect modeling, On-Chip Inductors

Educational
Qualifications
(From Highest)

2019

Doctor of Philosophy (Ph.D.) in Electronics and Communication Engineering with specialization in on-chip interconnect modeling from National Institute of Technology, Warangal

2014

Master of Technology in Digital Communications from KITS Warangal

2010

Bachelor of Technology in Electronics and Communication Engineering from SR Engineering College affiliated to JNTU Hyd.

Professional
Experience

2021

Assistant Professor at SR University, from 2021-03-08 to Till Date.

2019

Assistant Professor at KITS Warangal, from 2019-07-15 to 2020-04-30.

Student
Supervision

8

UG

Key Publications

C. Singh, G. L. Bhavani, U. H. Maginmani, R. Singh, A. S. Kumar and S. Rebelli, "A WSN-Based, Intelligent Medical IoT Systems Integrating Computer Vision Platform," 2023 3rd International Conference on Advance Computing and Innovative Technologies in Engineering (ICACITE), Greater Noida, India, 2023, pp. 1234-1239, doi: 10.1109/ICACITE57410.2023.10182784.

A. Bhardwaj, S. Rebelli, A. Gehlot, K. Pant, J. L. A. Gonzáles and F. A., "Machine learning integration in Communication system for efficient selection of signals," 2023 3rd International Conference on Advance Computing and Innovative Technologies in Engineering (ICACITE), Greater Noida, India, 2023, pp. 1529-1533, doi: 10.1109/ICACITE57410.2023.10182417.

Shashank Rebelli, 2023, Transmission Line Based Modeling of CNT and GNR Interconnects Using Numerical Methods. Bhattacharya, S., J, A., & Herrera, F.A. (Eds.). Nano-Interconnect Materials and Models for Next Generation Integrated Circuit Design (1st ed.). CRC Press

Sreejith, S., Ajayan, J., Reddy, N.U., Devasenapati, S.B. and Rebelli, S., 2023. Analysis of Covid-19 CT chest image classification using Dl4jMlp classifier and Multilayer Perceptron in WEKA Environment. Current Medical Imaging.

Rampeesa, A., Akhila, P., Irfan, M., Rebelli, S., Thoutam, L.R. and Ajayan, J., 2022, August. Design of Low Power 4-Bit Baugh-Wooley Multiplier using 1-Bit Mirror and Approximate Full Adders. In 2022 2nd Asian Conference on Innovation in Technology (ASIANCON) (pp. 1-4). IEEE.

Bhattacharya, S., Das, S., Tayal, S., Ajayan, J., Joseph, L., Juluru, T.K., Mukhopadhyay, A., Kanungo, S., Das, D. and Rebelli, S., 2022. Minimization of crosstalk noise and delay using reduced graphene nano ribbon (GNR) interconnect. Microelectronics Journal, 127, p.105533.

Reddy, S., Ch, N.K., Ch, S., Annamaiah, D., Rebelli, S. and Thoutam, L.R., 2022, June. Design of high quality factor symmetrical differential inductor using intercalated-graphene. In 2022 2nd International Conference on Intelligent Technologies (CONIT) (pp. 1-4). IEEE.

Ajayan, J., Mohankumar, P., Nirmal, D., Joseph, L.L., Bhattacharya, S., Sreejith, S., Kollem, S., Rebelli, S., Tayal, S. and Mounika, B., 2023. Ferroelectric Field Effect Transistors (FeFETs): Advancements, Challenges and Exciting Prospects for Next Generation Non-Volatile Memory (NVM) Applications. Materials Today Communications, p.105591.

Rebelli, S. and Nistala, B.R., 2018. A novel MRTD model for signal integrity analysis of resistive driven coupled copper interconnects. COMPEL-The international journal for computation and mathematics in electrical and electronic engineering, 37(1), pp.189-207.

Rebelli, S. and Nistala, B.R., 2019. A multiresolution time domain (MRTD) method for crosstalk noise modeling of CMOS-gate-driven coupled MWCNT interconnects. IEEE Transactions on Electromagnetic Compatibility, 62(2), pp.521-531.

Rebelli, S. and Nistala, B.R., 2018. An efficient MRTD model for the analysis of crosstalk in CMOS-driven coupled Cu interconnects. Radioengineering, 27(2), pp.532-540.